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Effects of triptolide on RIZ1 expression, proliferation, and apoptosis in multiple myeloma U266 cells | Acta Pharmacologica Sinica
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Constitutive Activation of Stat3 Signaling Confers Resistance to Apoptosis in Human U266 Myeloma Cells: Immunity
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CDKN1A Gene Expression in Two Multiple Myeloma Cell Lines With Different P53 Functionality | Anticancer Research
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Cancers | Free Full-Text | Balancing the CD38 Expression on Effector and Target Cells in Daratumumab-Mediated NK Cell ADCC against Multiple Myeloma
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Isolation and validaton of exosomes from both U266 cell line and MM... | Download Scientific Diagram
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Cancers | Free Full-Text | Constitutive Activation of STAT3 in Myeloma Cells Cultured in a Three-Dimensional, Reconstructed Bone Marrow Model
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Constitutive Activation of Stat3 Signaling Confers Resistance to Apoptosis in Human U266 Myeloma Cells: Immunity
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Brazilin Induces Apoptosis and G2/M Arrest via Inactivation of Histone Deacetylase in Multiple Myeloma U266 Cells | Journal of Agricultural and Food Chemistry
Original Article Maytansinoid immunoconjugate IMGN901 is cytotoxic in a three-dimensional culture model of multiple myeloma
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Appearance of colonies of U266 cells. The clonogenicity assays were... | Download Scientific Diagram
Figure 1 | Betulinic Acid Induces ROS-Dependent Apoptosis and S-Phase Arrest by Inhibiting the NF-κB Pathway in Human Multiple Myeloma
Brazilin Induces Apoptosis and G2/M Arrest via Inactivation of Histone Deacetylase in Multiple Myeloma U266 Cells | Journal of Agricultural and Food Chemistry
The Natural Human IgM Antibody PAT-SM6 Induces Apoptosis in Primary Human Multiple Myeloma Cells by Targeting Heat Shock Protein GRP78 | PLOS ONE
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Constitutive Activation of Stat3 Signaling Confers Resistance to Apoptosis in Human U266 Myeloma Cells: Immunity
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Frontiers | Isatuximab Acts Through Fc-Dependent, Independent, and Direct Pathways to Kill Multiple Myeloma Cells
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Frontiers | In vitro Generation of Cytotoxic T Cells With Potential for Adoptive Tumor Immunotherapy of Multiple Myeloma
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Multiple myeloma cells are exceptionally sensitive to heat shock, which overwhelms their proteostasis network and induces apoptosis | PNAS
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